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首页> 外文期刊>Advances in Water Resources >Reprint of 'Multi-step and two-step experiments in heterogeneous porous media to evaluate the relevance of dynamic effects'
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Reprint of 'Multi-step and two-step experiments in heterogeneous porous media to evaluate the relevance of dynamic effects'

机译:重印了“在异质多孔介质中进行多步和两步实验以评估动态效果的相关性”

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摘要

The determination of hydraulic properties in non-stationary experiments is suspected to be affected by dynamic effects. This is based on thermodynamic considerations on the pore scale displacement of wetting and non-wetting phase. But also macroscopic heterogeneities at the continuum scale may influence the dynamics of water during drainage and wetting. In this paper we investigate both aspects. Firstly, we present the results of typical multi-step outflow experiments in heterogeneous sand columns which are compared with two-step outflow experiments covering the same pressure range. The discrepancies caused by pressure steps of different size reveal the impact of dynamic effects due to the non-stationarity of the experiments. Secondly, the influence of macroscopic heterogeneities is investigated based on two-dimensional heterogeneous parameter fields where we compare static hydraulic properties with those obtained from simulated dynamic experiments. These analyses are restricted to numerical experiments because the focus is on the effect of heterogeneities and not on the validity of the applied model (i.e. Richards equation). We found that dynamic effects are not critical neither during the non-stationary experiments nor for heterogeneous parameter fields. This is a positive message for the usage of multi-step outflow experiments to estimate hydraulic parameters. A prerequisite for this clear statement was the introduction of a highly flexible parametrization of the pressure-saturation relation ψ(θ) which has the only physical constraint to be monotone.
机译:怀疑在非静态实验中确定水力特性会受到动态影响。这是基于对润湿相和非润湿相的孔尺度位移的热力学考虑。但是,连续尺度上的宏观异质性也可能影响排水和润湿过程中水的动力学。在本文中,我们研究了这两个方面。首先,我们介绍了在异质砂柱中典型的多步流出实验的结果,并将其与覆盖相同压力范围的两步流出实验进行了比较。由不同大小的压力阶跃引起的差异揭示了由于实验的非平稳性而产生的动态效应的影响。其次,基于二维异质性参数域研究了宏观异质性的影响,我们将静态水力特性与通过模拟动态实验获得的特性进行了比较。这些分析仅限于数值实验,因为重点在于异质性的影响而不是所应用模型(即Richards方程)的有效性。我们发现动态效果在非平稳实验和非均质参数场中都不是至关重要的。这对于使用多步流出实验估算水力参数是一个积极的信息。明确声明的前提是引入压力-饱和关系ψ(θ)的高度灵活的参数化,该参数具有唯一的物理约束为单调的。

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